Science City. Use alternatives for the military barracks Neusiedl am See. Turan, B. Y.; Furdikova, B.; Stupakova, I.; Nikolic, V.; Dorner, W.
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1 Science City Use alternatives for the military barracks Neusiedl am See Turan, B. Y.; Furdikova, B.; Stupakova, I.; Nikolic, V.; Dorner, W.;
2 Structure Introduction City of Neusiedl am See Theory of brownfieldmanagement Design principles Urban Planning Landscape planning Water management Daily needs and supply Hertiage conservation Project area Status quo Pressures Master plan Shops Heritage Urban plan Landscape Business and tech Conclusion and discussion
3 Theory of brownfieldmanagement Birth of the brownfield Reasons for unuse of the area Position of the government/community History of the area Type of Use Contaminations Remaining buildings Form of the area Location in the regional context
4 Hydrologic cylce Precipitation Evapotranspiration Infiltration Depression Interflow Surface run off Groundwater
5 Hydrologic cylce Precipitation Preserve Evapotranspiration Rearrange Infiltration Depression Interflow Surface run off Groundwater
6 Urban Rain Water management - conservative Rural area I City Small waste water treatment Rural area II River Waste water treatment Streets Waste water sewer Rain water sewer
7 Urban Rain Water management - conservative Rural area I Semi- Centralized brownfield management City Small waste water treatment De- Centralized Rural area II Centralized River Waste water treatment Streets Waste water sewer Rain water sewer
8 Urban processes Blocked Groundwater feeding Dry soils Irrigation of gardens with potable water Urban micro-climatic impacts roof street garage entrance groundwater
9 Urban processes - alternatives infiltration and storage depressions (Mulde-Rigole) greened roofs greened privat traffic areas cisterns for irrigation and grey water use Ponds for irrigation street groundwater
10 Daily needs and supply Shopping Toilets Stock Infrastructure Landscape view image
11 planning area brownfield management
12 area 12 ha planning area
13 planning area brownfield management
14 Design principles Solar technology and central heating/energy plant Rain water management Conservation of old buildings Integration of open spaces for public use Use existing building patterns Reducing pressure on soil (sealing, infiltration/groundwater)
15 Approach Brain storming Field studies Concept development Discussion with officials Synthesis Master plan sectors for functions Development plan
16 Development ideas Science City campus integrating science, business and living education student housing services r&d park spin-off center Mixed use education and research student housing public services housing estate
17 Soil management status quo Built area Buildings m² water management Sealed areas m² Green m² reduce preserve Rest m² develop
18 Existing traffic routes traffic infrastructure Existing blocked routes Traffic barriers
19 Views to be preserved views Views to be developed Optical barriers
20 Existing traffic routes traffic concept New routes Traffic barriers
21 Family houses Blocks of flats pressure of existing buildings Impacts of existing buildings
22 Business area Technical services Student housing Education & Research Privat housing Public/services Privat housing Blocks master plan with different sectors
23 keys of success brownfield management
24 Business, parking and technical area Urban development and traffic infrastructure Master plan Green plan for the edu and r&d center R&D and Edu Center Shopping and services
25
26 Shops Disposition/location in the main area Content / Necessary types of shops Possibilities of the exterior Communication with public area (green cafe)
27 Status quo brownfield management
28 Status of sealed areas green areas paved areas roofs
29 Rain water management greened roofs green + permeable materials Green areas + permeable materials(gravel) rremaining roofs parking permeable borders and infiltration strips
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